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脂肪信号通路和无翅信号通路对果蝇上皮细胞间黏附及翅远端发育起着相反的调节作用。

Fat and Wingless signaling oppositely regulate epithelial cell-cell adhesion and distal wing development in Drosophila.

作者信息

Jaiswal Manish, Agrawal Namita, Sinha Pradip

机构信息

Department of Biological Sciences and Bioengineering, Indian Institute of Technology, Kanpur 20 80 16, India.

出版信息

Development. 2006 Mar;133(5):925-35. doi: 10.1242/dev.02243. Epub 2006 Feb 1.

Abstract

Development of organ-specific size and shape demands tight coordination between tissue growth and cell-cell adhesion. Dynamic regulation of cell adhesion proteins thus plays an important role during organogenesis. In Drosophila, the homophilic cell adhesion protein DE-Cadherin (DE-Cad) regulates epithelial cell-cell adhesion at adherens junctions (AJs). Here, we show that along the proximodistal (PD) axis of the developing wing epithelium, apical cell shapes and expression of DE-Cad are graded in response to Wingless (Wg), a morphogen secreted from the dorsoventral (DV) organizer in distal wing, suggesting a PD gradient of cell-cell adhesion. The Fat (Ft) tumor suppressor, by contrast, represses DE-Cad expression. In genetic tests, ft behaves as a suppressor of Wg signaling. Cytoplasmic pool of beta-catenin/Arm, the intracellular transducer of Wg signaling, is negatively correlated with the activity of Ft. Moreover, unlike that of Wg, signaling by Ft negatively regulates the expression of Distalless (Dll) and Vestigial (Vg). Finally, we show that Ft intersects Wnt/Wg signaling, downstream of the Wg ligand. Fat and Wg signaling thus exert opposing regulation to coordinate cell-cell adhesion and patterning along the PD axis of Drosophila wing.

摘要

器官特异性大小和形状的发育需要组织生长与细胞间黏附之间的紧密协调。因此,细胞黏附蛋白的动态调节在器官发生过程中起着重要作用。在果蝇中,同源性细胞黏附蛋白DE-钙黏蛋白(DE-Cad)在黏着连接(AJs)处调节上皮细胞间的黏附。在此,我们表明,在发育中的翅上皮的近远轴(PD)上,顶端细胞形状和DE-Cad的表达会根据Wingless(Wg)进行分级,Wg是一种从翅远端的背腹(DV)组织者分泌的形态发生素,这表明细胞间黏附存在PD梯度。相比之下,脂肪(Ft)肿瘤抑制因子会抑制DE-Cad的表达。在基因测试中,ft表现为Wg信号的抑制因子。β-连环蛋白/Arm的细胞质池是Wg信号的细胞内转导子,与Ft的活性呈负相关。此外,与Wg不同,Ft信号会负向调节Distalless(Dll)和Vestigial(Vg)的表达。最后,我们表明Ft在Wg配体的下游与Wnt/Wg信号相交。因此,脂肪和Wg信号发挥相反的调节作用,以协调果蝇翅PD轴上的细胞间黏附和模式形成。

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